This was a series of spheres, or hollow balls, fitting inside one
another, and gradually diminishing in size like the ivory boxes of a
Chinese puzzle, or the coats of an onion. Their size was stupendous,
for the outer one, which contained all the rest, was nothing less
than the sky we see, and was encrusted all over with stars. Of the
inner smaller spheres, one bore, fixed in it like a jewel set in a
ring, the sun; and six others bore, in the same way, the moon and
the planets, one in each. All these hollow spheres were symmetrically
placed so that all centred in a single point, and at this point was a
solid sphere, exceedingly small in comparison, which was the earth. The
star sphere, without moving from its place, rotated round this central
Earth, and this caused the diurnal motion that we see in the stars.
Each planet-bearing sphere rotated also, but the special characteristic
of Eudoxus’ system is that each of these was surrounded by its own
complete set of spheres, bearing no planet, but all attached together,
the poles of one sphere resting on the surface of the next, and moving
with different speeds, in different directions, and with differently
inclined axes: these motions being all communicated to the innermost
sphere on which the planet was fixed, the net result was the movement
of the planet as we see it in the sky. Each planetary set was quite
separate from the rest, and did not interfere with their movements,
although each set was enclosed within the next larger. Since all the
planets have a diurnal motion like the stars, as well as their own
proper motions, each set had to be provided with a sphere which moved
exactly like the great all-enclosing star sphere.
Thus, the sun had one sphere turning like the star sphere, and within
this was a second, on which the sun was fixed, which turned round in
a year, in a west to east direction. The sun, carried along by the
combined motion, travelled through the sky with the daily and yearly
motions, as we see them.
[Illustration: Fig. 19. The spheres of the sun in the system of Eudoxus.
The outer sphere turns on its axis _A A_ in a day and night; the inner
on its axis _a a_ in a year, in the opposite direction.]
Public-domain text, read in full here on John Shaqi.
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